Leubner-Metzger G, Meins F
Friedrich Miescher-Institute, Maulbeerstrasse 66, CH-4058 Basel, Switzerland.
J Exp Bot. 2001 Sep;52(362):1753-9. doi: 10.1093/jexbot/52.362.1753.
Little is known about the molecular basis for seed dormancy, after-ripening, and radicle emergence through the covering layers during germination. In tobacco, endosperm rupture occurs after testa rupture and is the limiting step in seed germination. Class I beta-1,3-glucanase (betaGLU I), which is induced in the micropylar endosperm just prior to its penetration by the radicle, is believed to help weaken the endosperm wall. Evidence is presented here for a second site of betaGLU I action during after-ripening. Tobacco plants were transformed with antisense betaGLU I constructs with promoters thought to direct endosperm-specific expression. Unexpectedly, these transformants were unaffected in endosperm rupture and did not exhibit reduced betaGLU I expression during germination. Nevertheless, antisense betaGLU I transformation delayed the onset of testa rupture in light-imbibed, after-ripened seeds and inhibited the after-ripening-mediated release of photodormancy. It is proposed that betaGLU I expression in the dry seed contributes to the after-ripening-mediated release of seed dormancy.
关于种子休眠、后熟以及萌发过程中胚根穿过覆盖层出现的分子基础,我们了解甚少。在烟草中,种皮破裂后胚乳才会破裂,且胚乳破裂是种子萌发的限制步骤。I类β-1,3-葡聚糖酶(βGLU I)在胚根穿透珠孔端胚乳之前就在该部位被诱导产生,人们认为它有助于削弱胚乳壁。本文提供了证据,证明βGLU I在后熟过程中还有第二个作用位点。用反义βGLU I构建体转化烟草植株,其启动子被认为可指导胚乳特异性表达。出乎意料的是,这些转化体的胚乳破裂未受影响,且在萌发过程中βGLU I表达也未降低。然而,反义βGLU I转化延迟了吸胀光照下后熟种子的种皮破裂起始时间,并抑制了后熟介导的光休眠释放。有人提出,干燥种子中βGLU I的表达有助于后熟介导的种子休眠释放。